Xia T H, Jensen R A
Department of Microbiology and Cell Science, University of Florida, Gainesville 32611-0100.
J Biol Chem. 1990 Nov 15;265(32):20033-6.
Dual biosynthetic pathways diverge from prephenate to L-tyrosine in Pseudomonas aeruginosa, with 4-hydroxyphenylpyruvate and L-arogenate being the unique intermediates of these pathways. Prephenate dehydrogenase and arogenate dehydrogenase activities could not be separated throughout fractionation steps yielding a purification of more than 200-fold, and the ratio of activities was constant throughout purification. Thus, the enzyme is a cyclohexadienyl dehydrogenase. The native enzyme has a molecular weight of 150,000 and is a hexamer made up of identical 25,500 subunits. The enzyme is specific for NAD+ as an electron acceptor, and identical Km values of 0.25 mM were obtained for NAD+, regardless of whether activity was assayed as prephenate dehydrogenase or as arogenate dehydrogenase. Km values of 0.07 mM and 0.17 mM were calculated for prephenate and L-arogenate, respectively. Inhibition by L-tyrosine was noncompetitive with respect to NAD+, but was strictly competitive with respect to either prephenate or L-arogenate. With cyclohexadiene as variable substrate, similar Ki values for L-tyrosine of 0.06 mM (prephenate) and 0.05 mM (L-arogenate) were obtained. With NAD+ as the variable substrate, similar Ki values for L-tyrosine of 0.26 mM (prephenate) and 0.28 mM (L-arogenate), respectively, were calculated. This is the first characterization of a purified, monofunctional cyclohexadienyl dehydrogenase.
在铜绿假单胞菌中,从预苯酸到L-酪氨酸存在两条不同的生物合成途径,4-羟基苯丙酮酸和L-预苯酸是这些途径的独特中间体。在整个分级分离步骤中,预苯酸脱氢酶和预苯酸脱氢酶活性无法分离,纯化倍数超过200倍,且活性比在整个纯化过程中保持恒定。因此,该酶是一种环己二烯基脱氢酶。天然酶的分子量为150,000,是由相同的25,500亚基组成的六聚体。该酶对作为电子受体的NAD+具有特异性,无论将活性测定为预苯酸脱氢酶还是预苯酸脱氢酶,NAD+的Km值均为0.25 mM。预苯酸和L-预苯酸的Km值分别计算为0.07 mM和0.17 mM。L-酪氨酸对NAD+的抑制作用是非竞争性的,但对预苯酸或L-预苯酸则是严格竞争性的。以环己二烯作为可变底物,L-酪氨酸的类似Ki值分别为0.06 mM(预苯酸)和0.05 mM(L-预苯酸)。以NAD+作为可变底物,L-酪氨酸的类似Ki值分别计算为0.26 mM(预苯酸)和0.28 mM(L-预苯酸)。这是对纯化的单功能环己二烯基脱氢酶的首次表征。